Sun Lijun, Liu Lili, Lin Xiangyun, Xia Zhiyi, Cao Jingli, Xu Shaofu, Gu Haiying, Yang Haibing, Bao Ning
School of Life Sciences, Nantong University, 9 Seyuan Rd., Nantong, Jiangsu, 226019, China.
School of Public Health, Nantong University, 9 Seyuan Rd., Nantong, Jiangsu, 226019, China.
Anal Sci. 2021 Apr 10;37(4):605-611. doi: 10.2116/analsci.20P281. Epub 2020 Oct 23.
Plant roots play critical roles in absorbing nutrients for the growth and development of plants as well as adapting different environments. Currently, there is no satisfactory way to track dynamic information when studying roots at the high temporal and spatial resolution. Herein, a simple microfluidic device with crossed microchannels was utilized for a microscopic investigation of Arabidopsis thaliana roots in situ. Our experimental results showed that the microfluidic system combined with a microscope could be conveniently utilized for the quantification of primary roots and root hairs with a change of micrometers within a time of minutes. Using the same approach, the influences of high salinity stress could also be investigated on different parts of roots, including the root cap, meristematic zone, elongation zone, mature zone, and root hairs. More importantly, the growth of roots and root hairs could be quantified and compared in a solution of abscisic acid and indole-3-acetic acid, respectively. Our study suggested that the microfluidic system could become a powerful tool for the quantitative investigation of Arabidopsis thaliana roots.
植物根系在吸收养分以促进植物生长发育以及适应不同环境方面发挥着关键作用。目前,在以高时空分辨率研究根系时,尚无令人满意的方法来追踪动态信息。在此,一种具有交叉微通道的简单微流控装置被用于对拟南芥根系进行原位微观研究。我们的实验结果表明,微流控系统与显微镜相结合,能够在几分钟内方便地用于对主根和根毛进行微米级变化的定量分析。采用相同方法,还可以研究高盐胁迫对根系不同部位的影响,包括根冠、分生区、伸长区、成熟区和根毛。更重要的是,分别在脱落酸和吲哚 - 3 - 乙酸溶液中,可以对根和根毛的生长进行定量和比较。我们的研究表明,微流控系统可能成为定量研究拟南芥根系的有力工具。